Literature DB >> 31531435

Time-resolved observation of transient precursor state of CO on Ru(0001) using carbon K-edge spectroscopy.

Hsin-Yi Wang1, Simon Schreck1, Matthew Weston1, Chang Liu1, Hirohito Ogasawara2, Jerry LaRue3, Fivos Perakis1, Martina Dell'Angela4, Flavio Capotondi5, Luca Giannessi5, Emanuele Pedersoli5, Denys Naumenko5, Ivaylo Nikolov5, Lorenzo Raimondi5, Carlo Spezzani5, Martin Beye6, Filippo Cavalca1, Boyang Liu1, Jörgen Gladh1, Sergey Koroidov1, Piter S Miedema6, Roberto Costantini7, Lars G M Pettersson1, Anders Nilsson1.   

Abstract

The transient dynamics of carbon monoxide (CO) molecules on a Ru(0001) surface following femtosecond optical laser pump excitation has been studied by monitoring changes in the unoccupied electronic structure using an ultrafast X-ray free-electron laser (FEL) probe. The particular symmetry of perpendicularly chemisorbed CO on the surface is exploited to investigate how the molecular orientation changes with time by varying the polarization of the FEL pulses. The time evolution of spectral features corresponding to the desorption precursor state was well distinguished due to the narrow line-width of the C K-edge in the X-ray absorption (XA) spectrum, illustrating that CO molecules in the precursor state rotated freely and resided on the surface for several picoseconds. Most of the CO molecules trapped in the precursor state ultimately cooled back down to the chemisorbed state, while we estimate that ∼14.5 ± 4.9% of the molecules in the precursor state desorbed into the gas phase. It was also observed that chemisorbed CO molecules diffused over the metal surface from on-top sites toward highly coordinated sites. In addition, a new "vibrationally hot precursor" state was identified in the polarization-dependent XA spectra.

Entities:  

Year:  2019        PMID: 31531435     DOI: 10.1039/c9cp03677f

Source DB:  PubMed          Journal:  Phys Chem Chem Phys        ISSN: 1463-9076            Impact factor:   3.676


  1 in total

1.  Simulations of x-ray absorption spectra for CO desorbing from Ru(0001) with transition-potential and time-dependent density functional theory approaches.

Authors:  Gabriel L S Rodrigues; Elias Diesen; Johannes Voss; Patrick Norman; Lars G M Pettersson
Journal:  Struct Dyn       Date:  2022-01-13       Impact factor: 2.920

  1 in total

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